Synergistic performance of lecithin and glycerol monostearate in oil/water emulsions

[Display omitted] •Sinergistic Interactions between lecithin and GMS were found in O/W emulsions.•Mixture with the same lecithin/GMS ratio did produce the most stable emulsions.•Lecithin dominated adsorption kinetics and rheological properties.•GMS dominated the flow behavior of mixed emulsions. The...

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Veröffentlicht in:Colloids and surfaces, B, Biointerfaces B, Biointerfaces, 2017-03, Vol.151, p.68-75
Hauptverfasser: Moran-Valero, María I., Ruiz-Henestrosa, Víctor M. Pizones, Pilosof, Ana M.R.
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Sprache:eng
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Zusammenfassung:[Display omitted] •Sinergistic Interactions between lecithin and GMS were found in O/W emulsions.•Mixture with the same lecithin/GMS ratio did produce the most stable emulsions.•Lecithin dominated adsorption kinetics and rheological properties.•GMS dominated the flow behavior of mixed emulsions. The effects of the combination of two low-molecular weight emulsifiers (lecithin and glycerol-monostearate (GMS)) on the stability, the dynamic interfacial properties and rheology of emulsions have been studied. Different lecithin/GMS ratios were tested in order to assess their impact in the formation and stabilization of oil in water emulsions. The combination of the two surfactants showed a synergistic behaviour, mainly when combined at the same ratio. The dynamic film properties and ζ-potential showed that lecithin dominated the surface of oil droplets, providing stability to the emulsions against flocculation and coalescence, while allowing the formation of small oil droplets. At long times of adsorption, all of the mixtures showed similar interfacial activity. However, higher values of interfacial pressure at the initial times were reached when lecithin and GMS were at the same ratio. Interfacial viscoelasticity and viscosity of mixed films were also similar to that of lecithin alone. On the other hand, emulsions viscosity was dominated by GMS. The synergistic performance of lecithin-GMS blends as stabilizers of oil/water emulsions is attributed to their interaction both in the bulk and at the interface.
ISSN:0927-7765
1873-4367
DOI:10.1016/j.colsurfb.2016.12.015